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大肠杆菌中tRNA-tufB操纵子的调控。1. rRNA基因剂量效应和生长速率依赖性调控。

Control of the tRNA-tufB operon in Escherichia coli. 1. rRNA gene dosage effects and growth-rate-dependent regulation.

作者信息

Van Delft J H, Verbeek H M, De Jong P J, Schmidt D S, Talens A, Bosch L

机构信息

Department of Biochemistry, University of Leiden, The Netherlands.

出版信息

Eur J Biochem. 1988 Aug 1;175(2):355-62. doi: 10.1111/j.1432-1033.1988.tb14204.x.

Abstract

'Ribosome feedback' effects on the expression of the genes specifying tRNA and EF-Tu in E. coli have been studied at increased rrnB doses (rRNA gene doses). We confirm previous observations that the introduction into the cell of a multicopy plasmid carrying the rrnB operon reduces the cellular content of most tRNAs, including those encoded by the tRNA-tufB operon, but leaves the 5S rRNA content unaffected. Increase of the dosage of intact, but not of deleted rRNA genes, causes a slight drop in total EF-Tu that can be fully accounted for by a decrease in EF-TuB level. The drop in EF-TuB content (approx. 25%) is much smaller than that in tRNA content (approx. 80%). The synthesis rate of total EF-Tu is hardly affected, indicating that the turnover of EF-Tu has not changed. The ratio of tRNA over tuf RNA synthesis rates remains the same after elevation of rrnB dosage. Considering the large decrease in tRNA content this means that both RNA synthesis rates decrease to approximately the same extent. The relatively small drop in EF-Tu synthesis must be due, therefore, to an enhancement of the number of EF-Tu molecules synthesized per mRNA molecule. Apparently a post-transcriptional mechanism, regulating EF-Tu synthesis, becomes operative under these conditions. Growth-rate-dependent regulation of the tRNA-tufB operon has been studied using lysogens carrying tRNA':lacZ and tRNA-tufB':lacZ operon fusions and a tufB':lacZ' gene fusion. These experiments show that the cellular contents of tRNA, tufB RNA and EF-TuB vary in direct proportion to the growth rate. This indicates that growth rate control of tRNA-tufB operon transcription resembles that of stable RNA operons and not of r-protein operons, and that the read-through of the terminator at the end of the tRNA gene cluster remains unaltered.

摘要

在增加rrnB剂量(rRNA基因剂量)的情况下,研究了“核糖体反馈”对大肠杆菌中指定tRNA和EF-Tu的基因表达的影响。我们证实了先前的观察结果,即携带rrnB操纵子的多拷贝质粒导入细胞会降低大多数tRNA的细胞含量,包括那些由tRNA-tufB操纵子编码的tRNA,但5S rRNA含量不受影响。完整的rRNA基因剂量增加(而非缺失的rRNA基因)会导致总EF-Tu略有下降,这完全可以由EF-TuB水平的降低来解释。EF-TuB含量的下降(约25%)远小于tRNA含量的下降(约80%)。总EF-Tu的合成速率几乎不受影响,这表明EF-Tu的周转率没有改变。rrnB剂量升高后,tRNA与tuf RNA合成速率的比值保持不变。考虑到tRNA含量的大幅下降,这意味着两种RNA合成速率下降的程度大致相同。因此,EF-Tu合成相对较小的下降必定是由于每个mRNA分子合成的EF-Tu分子数量增加所致。显然,在这些条件下,一种调节EF-Tu合成的转录后机制开始起作用。利用携带tRNA':lacZ和tRNA-tufB':lacZ操纵子融合以及tufB':lacZ'基因融合的溶原菌,研究了tRNA-tufB操纵子的生长速率依赖性调控。这些实验表明,tRNA、tufB RNA和EF-TuB的细胞含量与生长速率成正比变化。这表明tRNA-tufB操纵子转录的生长速率控制类似于稳定RNA操纵子,而不是r蛋白操纵子,并且tRNA基因簇末端终止子的通读保持不变。

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